Abstract Structural batteries are multifunctional composite materials that can carry mechanical load and store electrical energy. Their multifunctionality requires an ionically conductive and stiff electrolyte matrix material. For this purpose, a bi-continuous polymer electrolyte is used where a porous solid phase holds the structural integrity of the system, and a liquid phase, which occupies the pores, conducts lithium ions. To assess the porous structure, three-dimensional topology information is needed. Here we study the three-dimensional structure of the porous battery electrolyte material using combined focused ion beam and scanning electron microscopy and transfer into finite element models. Numerical analyses provide predictions of ...
The realistic three dimensional (3D) microstructure of lithium ion battery (LIB) electrode plays a k...
This contribution concerns the multi-scale and multi-physics finite element analysis of structural p...
We study the effect of mechanical stresses arising in solid polymer electrolytes (SPEs) on the elect...
Structure-resolving simulation of porous materials in electrochemical cells such as fuel cells and l...
To predict the multifunctional performance of structural battery composites, multiple physical pheno...
The quest for lighter materials and structures to reduce climate impacts in the automotive industry ...
The quest for lighter materials and structures to reduce climate impacts in the automotive industry ...
The quest for lighter materials and structures to reduce climate impacts in the automotive industry ...
The composite cathode of an all-solid-state battery composed of various solid-state components requi...
Lithium ion batteries consist of three main porous components: anode, cathode, and in between them t...
A three-dimensional theoretical and numerical framework was developed to understand the processing-i...
vehicles due to their outstanding energy and power density. A typical Li-Ion battery electrode is a ...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
Three-dimensional (3D) electrode structures have the potential to significantly improve Li-ion batte...
The structural battery composite is a recently successfully developed multifunctional lithium-ion ba...
The realistic three dimensional (3D) microstructure of lithium ion battery (LIB) electrode plays a k...
This contribution concerns the multi-scale and multi-physics finite element analysis of structural p...
We study the effect of mechanical stresses arising in solid polymer electrolytes (SPEs) on the elect...
Structure-resolving simulation of porous materials in electrochemical cells such as fuel cells and l...
To predict the multifunctional performance of structural battery composites, multiple physical pheno...
The quest for lighter materials and structures to reduce climate impacts in the automotive industry ...
The quest for lighter materials and structures to reduce climate impacts in the automotive industry ...
The quest for lighter materials and structures to reduce climate impacts in the automotive industry ...
The composite cathode of an all-solid-state battery composed of various solid-state components requi...
Lithium ion batteries consist of three main porous components: anode, cathode, and in between them t...
A three-dimensional theoretical and numerical framework was developed to understand the processing-i...
vehicles due to their outstanding energy and power density. A typical Li-Ion battery electrode is a ...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
Three-dimensional (3D) electrode structures have the potential to significantly improve Li-ion batte...
The structural battery composite is a recently successfully developed multifunctional lithium-ion ba...
The realistic three dimensional (3D) microstructure of lithium ion battery (LIB) electrode plays a k...
This contribution concerns the multi-scale and multi-physics finite element analysis of structural p...
We study the effect of mechanical stresses arising in solid polymer electrolytes (SPEs) on the elect...